Sleep electroencephalography and heart rate variability interdependence amongst healthy subjects and insomnia/schizophrenia patients
详细信息    查看全文
  • 作者:Ramiro Chaparro-Vargas ; Claudia Schilling…
  • 关键词:EEG ; HRV ; Phase locking value ; Phase synchronisation ; Primary insomnia ; Schizophrenia ; Wavelet coherence
  • 刊名:Medical and Biological Engineering and Computing
  • 出版年:2016
  • 出版时间:January 2016
  • 年:2016
  • 卷:54
  • 期:1
  • 页码:77-91
  • 全文大小:2,662 KB
  • 参考文献:1.Acharya UR, Joseph KP, Kannathal N, Lim CM, Suri JS (2006) Heart rate variability: a review. Med Biol Eng Comput 44(12):1031–1051CrossRef
    2.Bartlett JE, Kotrlik JW, Higgins CC (2001) Organizational research: determining appropiate sample size in survey research. Inf Technol Learn Perform J 19(1):43–50
    3.Bartsch R, Kantelhardt JW, Penzel T, Havlin S (2007) Experimental evidence for phase synchronization transitions in the human cardiorespiratory system. Phys Rev Lett 98:054,102CrossRef
    4.Bob P (2012) Consciousness, schizophrenia and complexity. Cogn Syst Res 13(1):87–94CrossRef
    5.Chicharro D, Andrzejak RG (2009) Reliable detection of directional couplings using rank statistics. Phys Rev E 80:026,217CrossRef
    6.Chouinard S, Poulin J, Stip E, Godbout R (2004) Sleep in untreated patients with schizophrenia: a meta-analysis. Schizophr Bull 30(4):957–967CrossRef PubMed
    7.Dimitriadis S, Laskaris N, Del Rio-Portilla Y, Koudounis G (2009) Characterizing dynamic functional connectivity across sleep stages from EEG. Brain Topogr 22(2):119–133 Cited By (since 1996) 13CrossRef PubMed
    8.Dumont M, Jurysta F, Lanquart JP, Migeotte PF, van de Borne P, Linkowski P (2004) Interdependency between heart rate variability and sleep EEG: linear/non-linear? Clin Neurophysiol 115(9):2031–2040CrossRef PubMed
    9.Dumont M, Jurysta F, Lanquart JP, Noseda A, van de Borne P, Linkowski P (2007) Scale-free dynamics of the synchronization between sleep EEG power bands and the high frequency component of heart rate variability in normal men and patients with sleep apnea hypopnea syndrome. Clin Neurophysiol 118(12):2752–2764CrossRef PubMed
    10.Freeman D, Pugh K, Vorontsova N, Southgate L (2009) Insomnia and paranoia. Schizophr Res 108(1–3):280–284CrossRef PubMed PubMedCentral
    11.Haidekker MA (2011) Advanced biomedical image analysis. Wiley, New York
    12.Hegger R, Kantz H (1999) Practical implementation of nonlinear time series methods: the TISEAN package. Chaos 9:413–435CrossRef PubMed
    13.Iber C, Ancoli-Israel S, Chesson AL Jr, Quan SF (2007) The AASM manual for the scoring of sleep and associated events. Tech. rep., American Academy of Sleep Medicine
    14.Jansson-Frjmark M, Lindblom K (2008) A bidirectional relationship between anxiety and depression, and insomnia? A prospective study in the general population. J Psychosom Res 64(4):443–449CrossRef
    15.Jurysta F, van de Borne P, Migeotte PF, Dumont M, Lanquart JP, Degaute JP, Linkowski P (2003) A study of the dynamic interactions between sleep EEG and heart rate variability in healthy young men. Clin Neurophysiol 114(11):2146–2155CrossRef PubMed
    16.Jurysta F, Lanquart JP, Sputaels V, Dumont M, Migeotte PF, Leistedt S, Linkowski P, van de Borne P (2009) The impact of chronic primary insomnia on the heart rate EEG variability link. Clin Neurophysiol 120(6):1054–1060CrossRef PubMed
    17.Jurysta F, Kempenaers C, Lancini J, Lanquart JP, Van De Borne P, Linkowski P (2010) Altered interaction between cardiac vagal influence and delta sleep eeg suggests an altered neuroplasticity in patients suffering from major depressive disorder. Acta Psychiatr Scand 121(3):236–239CrossRef PubMed
    18.Mallat S (1999) A wavelet tour of signal processing. Elsevier Academic Press, Amsterdam
    19.Marusteri M, Bacarea V (2010) Comparing groups for statistical differences: How to choose the right statistical test? Biochem Med 20(1):15–32CrossRef
    20.Mesin L, Holobar A, Merletti R (2011) Advanced methods of biomedical signal processing. IEEE Press, New York
    21.Mezeiova K, Palus M (2012) Comparison of coherence and phase synchronization of the human sleep electroencephalogram. Clin Neurophysiol 123(9):1821–1830CrossRef PubMed
    22.Morin C, LeBlanc M, Daley M, Gregoire J, Mrette C (2006) Epidemiology of insomnia: prevalence, self-help treatments, consultations, and determinants of help-seeking behaviors. Sleep Med 7(2):123–130CrossRef PubMed
    23.Moroni F, Nobili L, Carli FD, Massimini M, Francione S, Marzano C, Proserpio P, Cipolli C, Gennaro LD, Ferrara M (2012) Slow EEG rhythms and inter-hemispheric synchronization across sleep and wakefulness in the human hippocampus. NeuroImage 60(1):497–504CrossRef PubMed
    24.Nikulin VV, Jnsson EG, Brismar T (2012) Attenuation of long-range temporal correlations in the amplitude dynamics of alpha and beta neuronal oscillations in patients with schizophrenia. NeuroImage 61(1):162–169CrossRef PubMed
    25.Noh K, Shin KS, Shin D, Hwang JY, Kim JS, Jang JH, Chung CK, Kwon JS, Cho KH (2013) Impaired coupling of local and global functional feedbacks underlies abnormal synchronization and negative symptoms of schizophrenia. BMC Syst Biol 7(30):1–13
    26.Palva J, Palva S, Kaila K (2005) Phase synchrony among neuronal oscillations in the human cortex. J Neurosci 25(15):3962–3972CrossRef PubMed
    27.Palva S, Monto S, Palva JM (2010) Graph properties of synchronized cortical networks during visual working memory maintenance. NeuroImage 49(4):3257–3268CrossRef PubMed
    28.Palva S, Palva JM (2012) Discovering oscillatory interaction networks with M/EEG: challenges and breakthroughs. Trends Cogn Sci 16(4):219–230CrossRef PubMed
    29.Pereda E, Quiroga RQ, Bhattacharya J (2005) Nonlinear multivariate analysis of neurophysiological signals. Prog Neurobiol 77(12):1–37CrossRef PubMed
    30.Petrovsky N, Ettinger U, Hill A, Frenzel L, Meyhoefer I, Wagner M, Backhaus J, Kumari V (2014) Sleep deprivation disrupts prepulse inhibition and induces psychosis-like symptoms in healthy humans. J Neurosci 34(27):9134–9140CrossRef PubMed
    31.Pikovsky A, Rosenblum M, Kurths J (2003) Synchronization a universal concept in nonlinear sciences. Cambridge University Press, Cambridge
    32.Sakkalis V, Giurcaneanu C, Xanthopoulos P, Zervakis M, Tsiaras V, Yang Y, Karakonstantaki E, Micheloyannis S (2009) Assessment of linear and nonlinear synchronization measures for analyzing EEG in a mild epileptic paradigm. IEEE Trans Inf Technol Biomed 13(4):433–441CrossRef PubMed
    33.Schaefer C, Rosenblum MG, Abel HH, Kurths J (1999) Synchronization in the human cardiorespiratory system. Phys Rev E 60:857–870CrossRef
    34.Staner L (2010) Comorbidity of insomnia and depression. Sleep Med Rev 14(1):35–46CrossRef PubMed
    35.Task Force of The European Society of Cardiology, The North American Society of Pacing and Electrophysiology (1996) Heart rate variability. Eur Heart J 17:354–381
    36.Timashev SF, Panischev OY, Polyakov YS, Demin SA, Kaplan AY (2012) Analysis of cross-correlations in electroencephalogram signals as an approach to proactive diagnosis of schizophrenia. Phys A Stat Mech Appl 391(4):1179–1194CrossRef
    37.von Klitzing L (1991) Heart rate of man is phase-coupled to an encephaloelectric signal. In: Annual international conference of the IEEE engineering in medicine and biology society
    38.Wacker M, Witte H (2011) On the stability of the n:m phase synchronization index. IEEE Trans Biomed Eng 58(2):332–338CrossRef PubMed
    39.Zalesky A, Fornito A, Seal ML, Cocchi L, Westin CF, Bullmore ET, Egan GF, Pantelis C (2011) Disrupted axonal fiber connectivity in schizophrenia. Biol Psychiatry 69:80–89CrossRef PubMed
  • 作者单位:Ramiro Chaparro-Vargas (1)
    Claudia Schilling (2)
    Michael Schredl (2)
    Dean Cvetkovic (1)

    1. School of Electrical and Computing Engineering, RMIT University, Melbourne, VIC, 3121, Australia
    2. Sleep laboratory of the Central Institute of Mental Health, Mannheim, Germany
  • 刊物类别:Engineering
  • 刊物主题:Biomedical Engineering
    Human Physiology
    Imaging and Radiology
    Computer Applications
    Neurosciences
  • 出版者:Springer Berlin / Heidelberg
  • ISSN:1741-0444
文摘
The quantification of interdependencies within autonomic nervous system has gained increasing importance to characterise healthy and psychiatric disordered subjects. The present work introduces a biosignal processing approach, suggesting a computational resource to estimate coherent or synchronised interactions as an eventual supportive aid in the diagnosis of primary insomnia and schizophrenia pathologies. By deploying linear, nonlinear and statistical methods upon 25 electroencephalographic and electrocardiographic overnight sleep recordings, the assessment of cross-correlation, wavelet coherence and \({\mathbf {n}}\):\({\mathbf {m}}\) phase synchronisation is focused on tracking discerning features amongst the clinical cohorts. Our results indicate that certain neuronal oscillations interact with cardiac power bands in distinctive ways responding to standardised sleep stages and patient groups, which promotes the hypothesis of subtle functional dynamics between neuronal assembles and (para)sympathetic activity subject to pathophysiological conditions.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700